CN105421050A - 婚纱面料及其制备方法 - Google Patents
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Abstract
本发明涉及一种婚纱面料及其制备方法,所述婚纱面料经过吸湿排汗处理步骤而得,所述吸湿排汗处理步骤为将所述婚纱面料在吸湿排汗处理剂中浸渍。本发明先将一定比例的植物纤维和欧根纱通过经纬交织织造成基布,再用特殊配方比例的吸湿排汗处理剂进行处理,改变织物对水分之吸湿、移动、排汗等性质,同时能够具有吸水性和快干性,吸收人体的汗液和热量,并将吸收到的汗液及热量迅速迁移至织物的表面并发散,使人体皮肤温度下降,能及时调节人体皮肤表层的生态温度环境,协助皮肤排汗,并能清洁皮肤,保持人体皮肤的干爽感,透气性良好,穿着舒适,手感丝滑,质地轻盈,有利于推广应用,满足市场上对吸湿排汗婚纱面料的需求。
Description
技术领域
本发明涉及一种面料,具体涉及一种婚纱面料及其制备方法。
背景技术
我国婚纱礼服行业与欧美国家相比起步较晚,人们真正开始接触白色婚纱还要追溯到上个世纪80年代。在此之前一直秉承红色凤冠霞帔的传统将近3000年之久。但由于经济条件受到制约,人们的婚纱消费观念受到社会意识的约束,以至于当时青年人对婚纱的强烈渴望以及追逐新时尚的美好愿望不能被完全满足。到2001年之前,结婚的新人大多数还是选择租赁婚纱礼服,而不愿意花更多的钱去订制购买一件更适合自己的婚纱礼服。
随着我国国民经济的快速增长,人民群众的生活水平不断提高以及着装观念的不断改进,人们追逐时尚的脚步也越来越快,新人对于结婚礼服亦有更高的期待和要求。进入21世纪后也即迎来了80后的结婚浪潮,在这一年代出生的人接受了更高等的教育,思想观念发生了根本的变化,更希望在婚礼中张扬个性,展现时尚,凸显风采。同时租赁的婚纱也难以解决卫生问题。据调查,目前80年代以后出生的新娘普遍愿意购买婚纱,而不是租大众化的婚纱。
虽然如今婚纱面料的市场需求越来越大,但对婚纱面料的研究却比较少。目前到对婚纱面料的研究主要集中在舒适性、色彩、设计和面料组合等方面。因此传统材质的婚纱将满足不了消费需求,而多功能婚纱面料将是值得推广的高品质婚纱用材料。但目前市场上的婚礼服饰都是在走低端路线,无法满足大众对多功能婚纱礼服的需求,且低质的婚纱礼服在服用性能和风格特征上也很差,使消费者难以接受,因此迫切需要对多功能的婚纱礼服进行开发。
人体在不停地向外排出水汽和分泌物因此服装面料的透气性能是人体保持舒适的一个重要因素,在炎热的夏季或做剧烈运动时人体大量出汗,此时服装面料的透气性能不仅能使服装保持干燥,而且能防止人体产生湿感。服装面料的透气性也可以维持人体热舒适性,如果人体排出的水汽不能很快通过面料散发出去就会有闷热感。服装面料吸湿散湿的途径是从面料的空隙散发汽态或液态水分。人们喜欢合成纤维原因主要是其透气性较好,尤其是目前一些超细纤维、改性纤维、异形纤维的出现大大改善了合成纤维的性能。
科技改变着服装,随着高科技的飞速发展,服装的变化主要表现在面料的开发运用上,同时艺术与技术前所未有地如此紧密地结合在一起,为面料在功能化、个性化、趣味化和易制作整理等方面带来了众多的变化。现代的面料设计与开发已与服装设计融为一体,各种面料的处理手法和各种工艺形式更加层出不穷。
吸湿排汗纺织品又称吸湿速干纺织品。它通过把皮肤上的汗水迅速从织物内层引导到织物外表,并散发到空气中去,从而保持贴身层始终处于干爽状态,使人体感觉舒适。
使织物具有吸湿排汗功能可由以下几个方向着手:一是从纤维原料的化结构改性入手,改善其吸湿性;二是通过纤维材料的物理形态结构改性,使之借助毛细管效应而改善其吸湿和导湿的性能,如中空、沟槽、异截面、表面微孔、细旦化等纤维差别化技术的应用;三是通过合理的织物组织结构设计;四是采用适当的后整理技术(包括涂层整理加工);还有就是可以通过与吸湿性强的纤维混纺,总之就是物理方法、化学方法以及物理化学方法的结合。
本发明正是针对多功能的婚纱礼服市场需要,设计开发出一种不但外观新颖而且又能满足婚纱礼服的服用性能和风格特征的要求的面料,来满足消费者的需求,填补多功能婚礼服饰市场的空白。
发明内容
针对现有技术存在的不足,本发明要解决的技术问题之一是提供一种婚纱面料。
本发明要解决的技术问题之二是提供上述婚纱面料的制备方法。
为解决上述问题,本发明采用如下技术方案:
一种婚纱面料的制备方法,包括以下步骤:将面料进行吸湿排汗处理。
优选地,所述吸湿排汗处理步骤为将所述面料在吸湿排汗处理剂中浸渍;
优选地,所述吸湿排汗处理剂由下述质量百分比的原料组成:0.4-0.6%亲水整理剂、0.2-0.4%交联剂、0.2-0.4%渗透剂、余量为水。
优选地,所述亲水整理剂为聚乙烯吡咯烷酮和/或聚丙烯酰胺。
优选地,所述交联剂由40-60wt%三羟甲基丙烷三丙烯酸酯和40-60wt%三羟甲基丙烷三甲基丙烯酸酯组成。
优选地,所述渗透剂由40-60wt%二丁基萘磺酸钠和40-60wt%甲基萘磺酸钠组成。
优选地,所述面料由经线和纬线组成,所述经线采用植物纤维,所述纬线采用欧根纱。
优选地,所述婚纱面料由40-60wt%植物纤维和40-60wt%欧根纱织造而成。
优选地,所述植物纤维包括莫代尔纤维、棉纤维、竹纤维、亚麻纤维;所述欧根纱包括涤纶、尼龙、人造丝、桑蚕丝。
优选地,一种婚纱面料的制备方法,在100-110℃条件下,将面料在吸湿排汗处理剂中浸渍20-30min,脱水后,在80-100℃条件下烘干5-10min。
本发明还提供了一种婚纱面料,采用上述方法制备而成。
具体的,在本发明中:
三羟甲基丙烷三丙烯酸酯,CAS号:15625-89-5。
三羟甲基丙烷三甲基丙烯酸酯,CAS号:3290-92-4。
二丁基萘磺酸钠,CAS号:25417-20-3。
甲基萘磺酸钠,CAS号:26264-58-4。
本发明涉及一种婚纱面料及其制备方法,先将一定比例的植物纤维和欧根纱通过经纬交织织造成基布,再用特殊配方比例的吸湿排汗处理剂进行处理,改变织物对水分之吸湿、移动、排汗等性质,同时能够具有吸水性和快干性,通过化学整理的方法使面料具有吸湿排汗功能,吸收人体的汗液和热量,并将吸收到的汗液及热量迅速迁移至织物的表面并发散,使人体皮肤温度下降,能及时调节人体皮肤表层的生态温度环境,协助皮肤排汗,并能清洁皮肤,保持人体皮肤的干爽感,透气性良好,穿着舒适,手感丝滑,质地轻盈,有利于推广应用,满足市场上对吸湿排汗婚纱面料的需求。
具体实施方式
下面是对本发明实施例进行详细阐述,以使本发明的优点和特征能更易于被本领域技术人员理解,从而对本发明的保护范围做出更为清楚明确的界定。
聚乙烯吡咯烷酮,CAS号:9003-39-8,采用安徽省金奥化工有限公司提供的聚乙烯吡咯烷酮PVPK30。
植物纤维采用亚麻纤维,直径为7.0μm,纤度为155dtex。
欧根纱采用涤纶欧根纱,直径为14.55μm,纤度为180dtex。
实施例1
婚纱面料的制备方法:
(1)经线为亚麻纤维,纬线为涤纶欧根纱,采用常规工艺织造得到基布,其中经线密度为12根/cm,纬线密度为14根/cm。
(2)在105℃条件下,将面料在吸湿排汗处理剂中浸渍25min,脱水后,在90℃条件下烘干8min,即得所述婚纱面料。
其中,吸湿排汗处理剂原料组成:0.5kg聚乙烯吡咯烷酮、0.1kg三羟甲基丙烷三丙烯酸酯、0.1kg三羟甲基丙烷三甲基丙烯酸酯、0.15kg二丁基萘磺酸钠、0.15kg甲基萘磺酸钠、99.0kg去离子水。
将上述的聚乙烯吡咯烷酮、交联剂、渗透剂加入去离子水中混合均匀,得到吸湿排汗处理剂。
实施例2
按实施例1的原料配比和方法制备婚纱面料,区别仅仅在于:
吸湿排汗处理剂原料组成:0.5kg聚乙烯吡咯烷酮、0.2kg三羟甲基丙烷三丙烯酸酯、0.15kg二丁基萘磺酸钠、0.15kg甲基萘磺酸钠、99.0kg去离子水。得到实施例2的婚纱面料。
实施例3
按实施例1的原料配比和方法制备婚纱面料,区别仅仅在于:
吸湿排汗处理剂原料组成:0.5kg聚乙烯吡咯烷酮、0.2kg三羟甲基丙烷三甲基丙烯酸酯、0.15kg二丁基萘磺酸钠、0.15kg甲基萘磺酸钠、99.0kg去离子水。得到实施例3婚纱面料。
实施例4
按实施例1的原料配比和方法制备婚纱面料,区别仅仅在于:
吸湿排汗处理剂原料组成:0.5kg聚乙烯吡咯烷酮、0.1kg三羟甲基丙烷三丙烯酸酯、0.1kg三羟甲基丙烷三甲基丙烯酸酯、0.3kg二丁基萘磺酸钠、99.0kg去离子水。得到实施例4婚纱面料。
实施例5
按实施例1的原料配比和方法制备婚纱面料,区别仅仅在于:
吸湿排汗处理剂原料组成:0.5kg聚乙烯吡咯烷酮、0.1kg三羟甲基丙烷三丙烯酸酯、0.1kg三羟甲基丙烷三甲基丙烯酸酯、0.3kg甲基萘磺酸钠、99.0kg去离子水。得到实施例5的婚纱面料。
测试例1
吸湿扩散性测试:
(1)每个样品裁取5块试样,每块试样的尺寸为10cm×10cm,试样应平整无皱褶。
(2)将试样放置在标准大气条件下调湿平衡。
(3)将试样平放在试验台上,吸取约0.2ml的水轻轻地滴在试样上,滴管口径距离试样表面应不超过1cm。
(4)仔细观察水滴扩散情况,记录水滴接触试样内层表面至完全渗透扩散(不再呈现镜面反射)至外层的所需时间,精确至0.1s。如果水滴扩散速度较慢,在一定时间(如300s)后仍未完全扩散,则可停止试验,并记录扩散时间为大于设定时间(如300s)。
(5)记录5块试样的平均滴水扩散时间(s)。
这种方法非常简易直观,观察者可以从水滴接触试样内层表面完全渗透扩散到外层所需的时间来评判其吸湿扩散性能。水滴扩散时间越短,说明其吸湿扩散性能越好。测试结果见表1。
表1:面料的平均滴水扩散时间结果表
平均滴水扩散时间(s) | |
实施例1 | 4.3 |
实施例2 | 7.8 |
实施例3 | 8.0 |
实施例4 | 7.2 |
实施例5 | 7.1 |
比较实施例1与实施2-3,实施例1(交联剂采用三羟甲基丙烷三丙烯酸酯和三羟甲基丙烷三甲基丙烯酸酯复配)平均滴水扩散时间明显低于实施例2-3(交联剂采用三羟甲基丙烷三丙烯酸酯和三羟甲基丙烷三甲基丙烯酸酯中单一原料);比较实施例1与实施例4-5,实施例1(渗透剂采用二丁基萘磺酸钠、甲基萘磺酸钠复配)平均滴水扩散时间明显低于实施例4-5(渗透剂采用二丁基萘磺酸钠、甲基萘磺酸钠中单一原料)。
测试例2
导湿排汗性测试:
参照标准ISO11092:1993,采用SDL排汗导湿仪测试各实施例和对比例的热阻、湿阻。测试结果见表2。
表2:各实施例及对比例的的热阻、湿阻结果表
热阻(10-3km2W-1) | 湿阻(Pam2W-1) | |
实施例1 | 9.318 | 4.324 |
实施例2 | 10.863 | 5.247 |
实施例3 | 10.809 | 5.207 |
实施例4 | 10.554 | 4.768 |
实施例5 | 10.416 | 4.721 |
比较实施例1与实施2-3,实施例1(交联剂采用三羟甲基丙烷三丙烯酸酯和三羟甲基丙烷三甲基丙烯酸酯复配)热阻、湿阻明显低于实施例2-3(交联剂采用三羟甲基丙烷三丙烯酸酯和三羟甲基丙烷三甲基丙烯酸酯中单一原料);比较实施例1与实施例4-5,实施例1(渗透剂采用二丁基萘磺酸钠、甲基萘磺酸钠复配)热阻、湿阻明显低于实施例4-5(渗透剂采用二丁基萘磺酸钠、甲基萘磺酸钠中单一原料)。
本发明涉及一种婚纱面料及其制备方法,先将一定比例的植物纤维和欧根纱通过经纬交织织造成基布,再用特殊配方比例的吸湿排汗处理剂进行处理,改变织物对水分之吸湿、移动、排汗等性质,同时能够具有吸水性和快干性,通过化学整理的方法使面料具有吸湿排汗功能,吸收人体的汗液和热量,并将吸收到的汗液及热量迅速迁移至织物的表面并发散,使人体皮肤温度下降,能及时调节人体皮肤表层的生态温度环境,协助皮肤排汗,并能清洁皮肤,保持人体皮肤的干爽感,透气性良好,穿着舒适,手感丝滑,质地轻盈,有利于推广应用,满足市场上对吸湿排汗婚纱面料的需求。
Claims (10)
1.一种婚纱面料的制备方法,其特征在于,包括以下步骤:将面料进行吸湿排汗处理。
2.权利要求1所述的婚纱面料的制备方法,其特征在于,所述吸湿排汗处理步骤为将所述面料在吸湿排汗处理剂中浸渍;
所述吸湿排汗处理剂由下述质量百分比的原料组成:0.4-0.6%亲水整理剂、0.2-0.4%交联剂、0.2-0.4%渗透剂、余量为水。
3.权利要求2所述的婚纱面料的制备方法,其特征在于,所述亲水整理剂为聚乙烯吡咯烷酮和/或聚丙烯酰胺。
4.权利要求2所述的婚纱面料的制备方法,其特征在于,所述交联剂由40-60wt%三羟甲基丙烷三丙烯酸酯和40-60wt%三羟甲基丙烷三甲基丙烯酸酯组成。
5.权利要求2所述的婚纱面料的制备方法,其特征在于,所述渗透剂由40-60wt%二丁基萘磺酸钠和40-60wt%甲基萘磺酸钠组成。
6.权利要求1-5中任一项所述的婚纱面料的制备方法,其特征在于,所述面料由经线和纬线组成,所述经线采用植物纤维,所述纬线采用欧根纱。
7.权利要求6所述的婚纱面料的制备方法,其特征在于,所述婚纱面料由40-60wt%植物纤维和40-60wt%欧根纱织造而成。
8.权利要求6所述的婚纱面料的制备方法,其特征在于,所述植物纤维包括莫代尔纤维、棉纤维、竹纤维、亚麻纤维;所述欧根纱包括涤纶、尼龙、人造丝、桑蚕丝。
9.权利要求1-5中任一项所述的婚纱面料的制备方法,其特征在于,在100-110℃条件下,将面料在吸湿排汗处理剂中浸渍20-30min,脱水后,在80-100℃条件下烘干5-10min。
10.一种婚纱面料,其特征在于,采用权利要求1-9中任一项所述方法制备而成。
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